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Resolution of the effects induced by W->F substitutions on the conformation and dynamics of the amyloid-forming apomyoglobin mutant W7FW14F

Academic Article
Publication Date:
2012
abstract:
Myoglobin is an alpha-helical globular protein containing two highly conserved tryptophanyl residues at positions 7 and 14 in the N-terminal region. The simultaneous substitution of the two residues increases the susceptibility of the polypeptide chain to misfold, causing amyloid aggregation under physiological condition, i.e., neutral pH and room temperature. The role played by tryptophanyl residues in driving the folding process has been investigated by examining three mutated apomyoglobins, i.e., W7F, W14F, and the amyloid-forming mutant W7FW14F, by an integrated approach based on far-ultraviolet (UV) circular dichroism (CD) analysis, fluorescence spectroscopy, and complementary proteolysis. Particular attention has been devoted to examine the conformational and dynamic properties of the equilibrium intermediate formed at pH 4.0, since it represents the early organized structure from which the native fold originates. The results show that the W -> F substitutions at position 7 and 14 differently affect the structural organization of the AGH subdomain of apomyoglobin. The combined effect of the two substitutions in the double mutant impairs the formation of native-like contacts and favors interchain interactions, leading to protein aggregation and amyloid formation
Iris type:
01.01 Articolo in rivista
Keywords:
Apomyoglobin; Protein folding; Protein misfolding; Amyloid aggregation
List of contributors:
Vilasi, Silvia
Authors of the University:
VILASI SILVIA
Handle:
https://iris.cnr.it/handle/20.500.14243/177718
Published in:
EUROPEAN BIOPHYSICS JOURNAL WITH BIOPHYSICS LETTERS
Journal
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URL

http://link.springer.com/article/10.1007/s00249-012-0829-1/fulltext.html
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